MIT 3.020 Thermodynamics of Materials, Spring 2021
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39 learners
What you'll learn
This course includes
- 26 hours of video
- Certificate of completion
- Access on mobile and TV
Course content
1 modules • 38 lessons • 26 hours of video
MIT 3.020 Thermodynamics of Materials, Spring 2021
38 lessons
• 26 hours
MIT 3.020 Thermodynamics of Materials, Spring 2021
38 lessons
• 26 hours
- Lecture 1: Introduction to Thermodynamics 52:51
- Supplemental Video: Sodium Acetate Demo 02:12
- Lecture 2: Scope and Use of Thermodynamics 48:41
- Lecture 3: Process Variables and the First Law 43:30
- Lecture 4: Heat Engines and Energy Conversion Efficiency 46:21
- Lecture 5: Second Law and Entropy Maximization 44:34
- Lecture 6: Thermodynamic Potentials 49:58
- Lecture 7: Ideal Gas Processes 46:23
- Lecture 8: Mathematical Implications of Equilibrium and Spontaneous Processes 44:30
- Lecture 9: Case Studies - Specific Heats and Phase Transformations 49:14
- Lecture 10: Introduction to Unary Phase Transformations 48:34
- Lecture 11: Phase Coexistence in Unary Systems 46:09
- Supplemental Video: The Three Dees of Thermodynamics 11:43
- Lecture 12: Case Studies - Saturation Vapor Pressure 39:55
- Lecture 13: Introduction to Ideal (Gas) Mixtures 49:57
- Lecture 14: Reacting Gas Mixtures at Equilibrium 47:40
- Lecture 15: Introduction to Solutions, General Case 50:10
- Supplemental Video: The Lever Rule 09:20
- Lecture 16: Partial Molar Properties 41:46
- Lecture 17: Solution Models - Ideal, Dilute, and Regular 44:41
- Lecture 18: Case Study in Reacting Gas Mixtures - Introducing the Nernst Equation 48:22
- Lecture 19: Regular Solution Models and Stability 50:19
- Lecture 20: Introduction to Binary Phase Diagrams 46:41
- Lecture 21: Phase Coexistence and Separation 41:48
- Lecture 22: Free Energy-Composition Diagrams, General Case 42:54
- Lecture 23: Building Binary Phase Diagrams, Part I 46:50
- Supplemental Video: Gallium-Indium Eutectic Demo 03:30
- Lecture 24: Building Binary Phase Diagrams, Part II 39:41
- Lecture 25: Building Binary Phase Diagrams, Part III 50:45
- Lecture 26: CALPHAD - Case Studies and Guest Lecture 53:45
- Lecture 27: Introduction to Statistical Thermodynamics 52:06
- Lecture 28: Boltzmann Hypothesis 44:00
- Lecture 29: Boltzmann Distribution 49:35
- Lecture 30: Intermediate Phases and Reactions 48:51
- Lecture 31: Reacting Multi-phase Systems 49:06
- Lecture 32: Case Study - Reacting, Multi-component, Multi-phase Systems 41:15
- Supplemental Video: Ternary Phase Diagram and Ouzo Demo 34:40
- Supplemental Video: Ouzo Demo 02:36
